Center for Discovery and Innovation, Hackensack Meridian Health, Nutley, NJ 07110, USA.
Cells. 2020 May 29;9(6):1350. doi: 10.3390/cells9061350.
Autologous stem cells are highly preferred for cellular therapy to treat human diseases. Mitochondria are organelles normally located in cytoplasm. Our recent studies demonstrated the differentiation of adult peripheral blood-derived insulin-producing cells (designated PB-IPC) into hematopoietic-like cells after the treatment with platelet-derived mitochondria. To further explore the molecular mechanism and their therapeutic potentials, through confocal and electron microscopy, we found that mitochondria enter cells and directly penetrate the nucleus of PB-IPC after the treatment with platelet-derived mitochondria, where they can produce profound epigenetic changes as demonstrated by RNA-seq and PCR array. Ex vivo functional studies established that mitochondrion-induced PB-IPC (miPB-IPC) can give rise to retinal pigment epithelium (RPE) cells and neuronal cells in the presence of different inducers. Further colony analysis highlighted the multipotent capability of the differentiation of PB-IPC into three-germ layer-derived cells. Therefore, these data indicate a novel function of mitochondria in cellular reprogramming, leading to the generation of autologous multipotent stem cells for clinical applications.
自体干细胞是细胞治疗人类疾病的首选。线粒体是通常位于细胞质中的细胞器。我们最近的研究表明,血小板衍生的线粒体处理后,成人外周血来源的胰岛素产生细胞(简称 PB-IPC)可分化为造血样细胞。为了进一步探索其分子机制和治疗潜力,通过共聚焦和电子显微镜观察,我们发现线粒体进入细胞后,可直接穿透 PB-IPC 的核,在那里它们可以产生深远的表观遗传变化,如 RNA-seq 和 PCR 阵列所示。体外功能研究证实,线粒体诱导的 PB-IPC(miPB-IPC)在不同诱导剂的存在下可诱导视网膜色素上皮(RPE)细胞和神经元细胞的生成。进一步的集落分析强调了 PB-IPC 向三胚层来源细胞分化的多能性能力。因此,这些数据表明线粒体在细胞重编程中具有新的功能,可产生用于临床应用的自体多能干细胞。